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Nonlinear polarization rotation in semiconductor optical amplifiers: theory and application to all-optical flip-flop memories

机译:半导体光放大器中的非线性偏振旋转:理论和对全光触发器存储器的应用

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摘要

We present a model for polarization-dependent gain saturation in strained bulk semiconductor optical amplifiers. We assume that the polarized optical field can be decomposed into transverse electric and transverse magnetic components that have indirect interaction with each other via the gain saturation. The gain anisotropy due to tensile strain in the amplifier is accounted for by a population imbalance factor. The model is applied to a nonlinear polarization switch, for which results are obtained, that are in excellent agreement with experimental data. Finally, we describe an all-optical flip-flop memory that is based on two coupled nonlinear polarization switches.
机译:我们提出了应变体半导体光放大器中偏振相关增益饱和的模型。我们假设偏振光场可以分解为横向电场分量和横向磁场分量,这些分量通过增益饱和彼此间接相互作用。放大器中由于拉伸应变而引起的增益各向异性是由总体不平衡因子引起的。该模型被应用于非线性极化开关,获得的结果与实验数据非常吻合。最后,我们描述了一种基于两个耦合的非线性极化开关的全光触发器存储器。

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